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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Fluidized bed gasification of Kingston coal and marine microalgae in a spouted bed reactor
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Fluidized bed gasification of Kingston coal and marine microalgae in a spouted bed reactor

机译:金斯顿煤和海洋微藻的流化床气化在喷射的床反应器中

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Steam gasification experiments were performed using a low-rank coal from South Australia, a marine microalga, and a blend of leached microalgal biomass and coal, in a spouted, fluidized bed reactor. The effect of different operating conditions - air-to-fuel ratio (A/F), steam-to-fuel ratio (S/F) and bed temperature (Tb) - on the producer gas composition was investigated. Producer gas compositions were analyzed and samples of bed material were also examined to identify ash components formed during each experiment. The optimum operating conditions for coal gasification, in this system, were identified to occur with A/F=1.82, S/F=0.75 and T_b = 850 °C. These conditions resulted in a producer gas with the highest heating value (per mass of fuel fed), the highest extent of carbon conversion and the optimum H2:CO ratio for Fischer-Tropsch synthesis. In addition, preliminary attempts to gasify a sun-dried marine microalga are reported. The dried biomass, sieved to 1.0-3.35 mm, was gasified with air and steam. Preliminary experiments, utilizing the as-received biomass, proved unsuccessful due to rapid bed sintering. Leaching of the algal biomass to remove the extra-cellular salt and co-gasification of the resultant biomass (10 wt%) with low-rank coal also proved unsuccessful due primarily to blockages of the downstream product lines most likely due to attrition of the algae feed in the screw feeder and elutriation from the bed.
机译:使用来自南澳大利亚,海洋微藻和浸出的微藻生物量和煤的浓度的低级煤进行蒸汽气化实验,在喷出的流化床反应器中。研究了不同操作条件的效果 - 还研究了空气 - 燃料比(A / F),蒸汽 - 燃料比(S / F)和床温(TB) - 在生产气体组合物上。分析生产者气体组合物,还检查床材料样品以鉴定在每个实验期间形成的灰分成分。在该系统中,鉴定了煤气化的最佳操作条件,以A / F = 1.82,S / F = 0.75和T_B = 850℃发生。这些条件导致生产者气体具有最高的加热值(每质量燃料供给),碳转化程度的最高程度和Fischer-Tropsch合成的最佳H2:Co比。此外,据报道,初步尝试气化干燥的海洋微藻。干燥的生物质筛分为1.0-3.35mm,用空气和蒸汽气化。利用AS接收的生物质的初步实验证明了由于快速床烧结而不成功。藻类生物质的浸出以除去所得生物质(10wt%)的抗细胞盐和共气化,低级煤也证明了由于藻类磨损而堵塞的下游产品系列的堵塞是不成功的从床上喂食和从床上的浇灌。

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